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Influence of aerosol concentration on precipitation formation in low-level,warm stratiform clouds

机译:气溶胶浓度对低层暖层状云降水形成的影响

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摘要

A one-dimensional model with size-resolved cloud microphysics is used to investigate possible reinforcement or inhibition effects of different concentrations of cloud condensation nuclei(CCN)on precipitation formation in low-level,warm stratiform marine and continental clouds.Precipitation is found to be inhibited due to newly activated droplets when a precipitating marine cloud moves over a polluted environment with higher CCN concentrations.Precipitation can be initiated in a non-precipitating cloud having a high concentration of small droplets by seeding giant CCN(> 1 mum in radius)into the cloud.Precipitation intensity in warm,stratiform clouds with and without background giant CCN differs little,implying very limited effects of background giant CCN on precipitation formation.The limited effects include a slightly slower precipitation formation,which is found to be caused by lower supersaturation,in clouds containing the background giant CCN compared to clouds without giant CCN.The delay of precipitation development is longer for continental clouds with high CCN concentration than for marine clouds with low CCN concentration.Sensitivity tests show that by increasing the giant CCN concentration an earlier precipitation can be initiated,especially in higher CCN concentration cases.It is concluded that the role of giant CCN on precipitation formation in warm,stratiform clouds is minor and is only important when concentrations of both the CCN and giant CCN(especially the largest CCN,e.g.,> 5 urn)are high.
机译:利用一维解析云微观物理学模型研究低浓度,温暖层状海洋云和大陆云中不同浓度的云凝结核(CCN)对降水形成的可能增强或抑制作用。当沉淀的海洋云在CCN浓度较高的污染环境中移动时,由于新活化的液滴而被抑制。可以通过将巨型CCN(半径大于1毫米)播种到非沉淀云中来沉淀高液滴的非沉淀云。有和没有背景巨人CCN的温暖,层状云中的降水强度差异不大,这意味着背景巨人CCN对降水形成的影响非常有限。有限的影响包括稍慢的降水形成,这是由于较低的过饱和引起的。 ,包含背景巨型CCN的云与没有巨型CCN的云相比。 CCN浓度高的大陆云的降水发展延迟要比CCN浓度低的海洋云更长。巨型CCN在温暖的层状云中对降水形成的作用很小,仅在CCN和巨型CCN(特别是最大的CCN,例如> 5 urn)浓度都很高时才重要。

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